HFBR-5961ALZ Avago Technologies US Inc., HFBR-5961ALZ Datasheet - Page 8

TXRX MMF FE SONET OC-3 2X5

HFBR-5961ALZ

Manufacturer Part Number
HFBR-5961ALZ
Description
TXRX MMF FE SONET OC-3 2X5
Manufacturer
Avago Technologies US Inc.
Series
-r
Datasheet

Specifications of HFBR-5961ALZ

Data Rate
155MBd
Wavelength
1300nm
Applications
Ethernet
Voltage - Supply
2.97 V ~ 3.63 V
Connector Type
LC Duplex
Mounting Type
Through Hole
Function
Transceivers for ATM, FDDI, Fast Ethernet and SONET OC-3/SDH STM-1 with LC connector.
Product
Transceiver
Maximum Rise Time
3 ns/2.2 ns
Maximum Fall Time
3 ns/2.2 ns
Pulse Width Distortion
0.4 ns/0.3 ns
Maximum Output Current
50 mA
Operating Supply Voltage
2.97 V to 3.63 V
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Package / Case
DIP With Connector
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
Multimode Glass
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HFBR-5961ALZ
Manufacturer:
Avago Technologies
Quantity:
135
Immunity
Equipment utilizing these transceivers will be subject
to radio-frequency electromagnetic fields in some envi-
ronments. These transceivers have a high immunity to
such fields.
For additional information regarding EMI, susceptibil-
ity, ESD and conducted noise testing procedures and
results. Refer to Application Note 1166, Minimizing
Radiated Emissions of High-Speed Data Communica-
tions Systems.
Transceiver Reliability and Performance Qualification Data
The 2 x 5 transceivers have passed Avago reliability and
performance qualification testing and are undergoing
ongoing quality and reliability monitoring. Details are
available from your Avago sales representative.
These transceivers are manufactured at the Avago
Singapore location which is an ISO 9001 certified
facility.
Applications Support Material
Contact your local Avago Component Field Sales Office
for information on how to obtain PCB layouts and eval-
uation boards for the 2 x 5 transceivers.
Regulatory Compliance Table
8
Feature
Electrostatic Discharge
(ESD) to the Electrical
Pins
Electrostatic Discharge
(ESD) to the LC Recep-
tacle
Electromagnetic Inter-
ference (EMI)
Immunity
Eye Safety
Component Recogni-
tion
Test Method
MIL-STD-883C
Variation of IEC 61000-4-2
FCC Class B
CENELEC CEN55022 VCCI
Class 2
Variation of IEC 61000-4-3
AEL Class 1EN60825-1 (+A11)
Underwriters Laboratories and
Canadian Standards Association Joint
Component Recognition for Informa-
tion Technology Equipment including
Electrical Business Equipment
Figure 7. Transmitter Output Optical Spectral Width (FWHM) vs. Transmit-
ter Output Optical Center Wavelength and Rise/Fall Times
Figure 8. Relative Input Optical Power vs Eye Sampling Time Position
Performance
Meets Class 2 (2000 to 3999 Volts).Withstand up to 2200 V
applied between electrical pins.
Typically withstand at least 25 kV without damage when
the LC connector receptacle is contacted by a Human Body
Model probe.
Transceivers typically provide a 10 dB margin to the noted
standard limits when tested at a certified test range with
the transceiver mounted to a circuit card without a chassis
enclosure.
Typically show no measurable effect from a 10 V/m field
swept from 80 to 450 MHz applied to the transceiver when
mounted to a circuit card withouta chassis enclosure.
Compliant per Avago testing under single fault conditions.
TUV Certification - R 02071015
UL File #: E173874
6
5
4
3
2
1
0
-3
200
180
160
140
120
100
l C – TRANSMITTER OUTPUT OPTICAL RISE/FALL TIMES – ns
1260
-2
EYE SAMPLING TIME POSITION (ns)
1.0
1.5
2.0
2.5
3.0
1280
-1
1300
0
t r/f – TRANSMITTER
OUTPUT OPTICAL RISE/
FALL TIMES – ns
1320
1
1340
2
3.0
1360
3
HFBR-5961xxZ TRANS-
MITTER TEST RESULTS
OF λ C , ∆λ AND t r/f ARE
CORRELATED AND COMPLY
WITH THE ALLOWED
SPECTRAL WIDTH AS A
FUNCTION OF CENTER
WAVELENGTH FOR
VARIOUS RISE AND
FALL TIMES.
CONDITIONS:
1. T
2. V
3. INPUT OPTICAL RISE/
4. INPUT OPTICAL POWER
5. NOTE 15 AND 16 APPLY.
FALL TIMES = 2.1/1.9 ns.
IS NORMALIZED TO
CENTER OF DATA SYMBOL.
A
CC
= +25 C
= 3.3 V dc

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